个人信息Personal Information
教授
博士生导师
硕士生导师
性别:男
毕业院校:大连理工大学
学位:博士
所在单位:化工学院
学科:化学工艺. 能源化工
办公地点:西校区化工实验楼C325,
详见 http://tcbc.dlut.edu.cn/
联系方式:13500797040, 详见 http://tcbc.dlut.edu.cn/
电子邮箱:spxu@dlut.edu.cn
Biomass steam gasification for hydrogen-rich gas production in a decoupled dual loop gasification system
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论文类型:期刊论文
发表时间:2017-10-01
发表刊物:FUEL PROCESSING TECHNOLOGY
收录刊物:SCIE、EI
卷号:165
页面范围:54-61
ISSN号:0378-3820
关键字:Biomass; Steam gasification; Decoupling; Dual loop; Hydrogen-rich gas; Olivine
摘要:In order to improve tar destruction and hydrogen-rich gas production in steam gasification of biomass, a novel decoupled dual loop gasification system (DDLG) has been proposed. In the system, fuel pyrolysis/gasification, tar cracking/reforming and char combustion are decoupled into three reactors correspondingly, i.e. fuel reactor, reformer and combustor. Both the fuel reactor and the reformer are separately interconnected with the combustor, forming two bed material circulation loops, one for fuel pyrolysis/gasification and the other for tar cracking/reforming. In this way, the above-mentioned reactions could be optimized separately under appropriate conditions. With pine sawdust as feedstock and calcined olivine as both solid heat carrier and in-situ tar cracking/ reforming catalyst, the steam gasification performance of the system has been investigated. It has been indicated that the configuration of the system provides an effective way to strengthen the tar cracking/reforming reaction for efficient tar removal. Specifically, a product gas with hydrogen concentration of 40.8 vol%, tar content as low as 14.1 g/Nm(3) and dry gas yield of 1.0 Nm(3)/kg.daf was obtained at the fuel reactor temperature 800 degrees C, reformer temperature 850 degrees C, steam to carbon mass ratio 1.2 and circulation ratio 10. (C) 2017 Elsevier B.V. All rights reserved.